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Drive-train configurations for Floating wind turbines

机译:浮动风力涡轮机的传动系统配置

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摘要

Designing an offshore floating wind turbine brings new structural and mechanical constraints to the nacelle and its components. For the purpose of stability and avoiding critical eigen frequencies for the tower, the tower top mass must not be too high. Because of the transient nature of loads acting at the nacelle and high probability of mechanical failure, the strength and the life of components are at stake. This implies that the components at the nacelle must have a simple design with fewer parts, be lightweight as practically possible and also strong enough to cope with the load dynamics. A survey on some of the floating wind turbine concepts shows that geared driven power trains are the standard design choice. This article identifies some key attributes that are essential for drive-trains to be successfully integrated onto floating wind turbines. An Overview of technology options is presented with a comparative assessment on their suitability to floating wind turbines based on their simplicity, structural integrity and potential for weight reductions. With a number of methods available for weight optimized construction and greater flexibility in design, direct-drive generators appear to be a promising option for floating wind turbines.
机译:设计海上浮动式风力涡轮机给机舱及其部件带来了新的结构和机械约束。为了稳定并避免塔的临界特征频率,塔的顶部质量不能太高。由于作用在机舱上的负载具有瞬态特性,并且发生机械故障的可能性很高,因此部件的强度和寿命受到威胁。这意味着机舱的组件必须设计简单,零件少,在实际操作中尽可能轻巧,并且强度足以应对负载动态。对一些浮动式风力涡轮机概念的调查显示,齿轮传动的传动系是标准的设计选择。本文确定了一些关键属性,这些属性对于将传动系统成功集成到浮动风力涡轮机中至关重要。提出了技术选择概述,并基于其简单性,结构完整性和减轻重量的潜力对它们适用于浮动风力涡轮机进行了比较评估。由于有许多方法可以优化重量,并具有更大的设计灵活性,因此直接驱动式发电机似乎是浮动风力涡轮机的有前途的选择。

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